Abstract:… This approach however, further reduces porosity of the electrodes making them even less permeable to electrolyte. Handling thin and brittle electrode disks adds significant manufacturing costs. Giner, Inc. proposes to address these problems by using a fibrous nano-composite… more
Abstract:…, hydrophobic, impact and abrasion resistant coating on the landing ski/skids is highly desired to ensure the ski/skid equipped aircraft can continue to meet their unique mission requirement. Resodyn Corporation proposes a material solution in the form a nanocomposite… more
Abstract:… are a primary component in currently used EMI shields. Consequently, the shielding materials are heavy, and not optimally suitable for use in avionic electronic equipment. In the Phase I program, we propose to demonstrate the feasibility of a novel polymer/CNT nanocomposite… more
Abstract:… accumulation on UAVs. The specialized design and construction of UAVs make them vulnerable to inclement weather, especially conditions favorable for ice formation. In Phase I, we propose to demonstrate the anti-icing capability of a superhydrophobic nanocomposite coating… more
Abstract:The objective of this SBIR program is to adapt NanoSonic"s high temperature, ballistic resistant HybridSilTM nanocomposites for use as next generation potting materials with exceptional thermal durability, g-force resilience, and negligible variation (<10 %) in dynamic… more
Abstract:… of engineers, chemists and materials scientists capable of design, simulation and fabrication of this product. As a high performance, survivable and reliable antenna solution, NanoSonic would construct covalently bonded substrate layers from customized nanocomposite… more
Abstract:… of design, simulation and fabrication of this product. The NanoSonic would team leverage existing work for custom computational electromagnetics tools, dielectric materials and composite construction. NanoSonic would construct substrate layers from customized nanocomposite… more
Abstract:…, NanoSonic would team leverage existing work for metamaterial-based antennas, advanced simulation tools, construction fire-resistant composites and coatings, and unique other materials. NanoSonic would construct substrate and composite layers from customized nanocomposite… more
Abstract:The objective of this Phase II SBIR program is to develop and integrate a next generation corrosion protective coating that prevents corrosion within a broad spectrum of metal alloys including 5000 series aluminum alloys operating in demanding marine environments. Core HybridSilTM technology… more
Abstract:The objective of this Phase II SBIR program is to transition NanoSonic"s HybridSil Diver armor nanocomposite technology to next generation special operations forces (SOF) dry and wet suits for drastically enhanced multi-threat protection from laceration, abrasion, and… more
Abstract:The purpose of this SBIR program is to develop novel, lightweight, hybrid nanocomposites that combine erosion resistance and anti-icing functionality to provide passive anti-icing protection for UAVs. NanoSonic will build on its demonstrated HybridSil Erosion protective,… more
Abstract:The overall objective of this SBIR program is to develop novel, lightweight, hybrid nanocomposites that combine high levels of anti-icing functionality and erosion resistance to provide exceptional passive anti-icing protection to support the U.S. Army Roadmap for Unmanned… more
Abstract:The overall objective of this STTR program is to develop, qualify, and transition innovative, lightweight, HybridSil nanocomposite materials for multiple threat ballistic, blast and fire protection to tactical vehicle fuel tanks. Compared to competing technologies,… more
Abstract:… the sealant material. The sealant material is impermeable to water or oil, self-consolidated and resistant to variety of chemical. BENEFIT: The successful outcome of the proposed research has significant impact on national infrastructure. The developed nanocomposite sealant… more
Abstract:Physical Sciences Inc. (PSI) proposes to demonstrate the advantage of using a coupling agent to bind ceramic dielectric nanofillers uniformly within a high temperature polymer matrix. On the proposed Phase I program, PSI will enhance the energy density of nanocomposite… more
Abstract:This proposed Phase I SBIR program will produce safer, higher-rate, high energy density, thermal batteries through the development of improved nanocomposite anode materials. This development will increase the anode side of the thermal battery by replacing traditional lithium… more
Abstract:… as high as several J/cc to be produced. Recent developments in dielectrics have resulted in claims for capacitors with 20-100 times the energy density of current capacitors, using a combination of high permittivity and high breakdown strength nanocomposite dielectrics.… more
Abstract:… materials, designs and manufacturing processes have been developed for power sources that have potential for an order of magnitude reduction in mass and volume relative to current commercially available capacitors. The technology is based on novel nanocomposite… more
Abstract:…, lower cost composite materials and manufacturing processes are needed to provide lighter weight and cost- competitive alternatives to aluminum and beryllium for missile avionics boxes and electronic support structures. The proposed solution is lower cost nano-composite… more
Abstract:ABSTRACT: Fully Dense Reactive Nanocomposite Materials (FD-RNM) have unique chemical and physical properties and if properly exploited can lead to greater blast effects, chem/bio agent defeat and less collateral damage than conventional steel warhead cases. Whether the FD-RNM… more
Abstract:The proposed research effort will develop a highly efficient MEMS energy harvesters that utilize a novel nanocomposite technology recently developed by HARP Engineering LLC. Unlike existing piezoelectric nanocomposites, the material proposed here has an electromechanical… more
Abstract:… pyrophoric nature, and very sensitive to corrosion and oxidation. By using a unique synthesis technique, GDL will combine graphene nano-particles with Mg nano-particles in a chemical solution phase method. This method will strengthen the resulting nanocomposite and increase… more
Abstract:… performing thermoelectric materials, ADA Technologies, Inc., in collaboration with the University of Colorado, propose the development of a novel, high performance (i.e., high figure of merit or, ZT) and highly scalable thermoelectric material based on nanocomposite… more
Abstract:… ion battery technologies (e.g., increased energy and power density) are required to enable MAVs to execute their intended missions. To address this need, ADA Technologies, Inc., proposes to continue advancements made in Phase I to develop advanced nanocomposite electrodes… more
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